Exchange processes across a porous-medium free-flow interface occur in a wide range of environmental, technical and bio-mechanical systems. The primary objectives of this project are to (i) analyse and improve the theory, as well as (ii) offer solution methods for non-isothermal, multi-phase, multi-component flow and transport processes at a porous-medium free-flow interface and (iii) investigate the influence of these processes on both the porous medium and free-flow region for various application scales.
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May 14, 2025
Veyskarami, Maziar, 2025, "DuMuX code for: "Coupled free-flow-porous media flow processes including drop formation"", https://doi.org/10.18419/DARUS-5042, DaRUS, V1
This dataset contains the source code used for the dissertation "Veyskarami, M. (2023). Coupled free-flow-porous media flow processes including drop formation" (http://dx.doi.org/10.18419/opus-13894).
Shell Script - 965 B - MD5: e3c1a0bd92b1ec7f7afa0b4b339f3265
Installation script
Markdown Text - 2.9 KB - MD5: b36a29022a2a81d110779c40ef27297c
Instruction to install and run the simulations
Gzip Archive - 145.4 KB - MD5: 16cfb5631249d8195e5d4df1c40a3e06
The source code
Mar 24, 2025 - Utrecht University
Müller, Johannes; Yan, Lifei; Raoof, Amir; Weigand, Bernhard, 2025, "Microfluidic experiments on single pore-filling instabilities with varying wettability, capillary number and viscosity ratio", https://doi.org/10.18419/DARUS-4683, DaRUS, V1
Microfluidic experiments performed at the Multi-Scale Porous Media Lab, Environmental Hydrogeology group, Earth Sciences, Utrecht University. Investigation of single pore fillings under three different intrinsic pore wall wettabilities, three flow rates and two viscosity ratios with simultaneous pressure recording. Naming convention for videos *.ti...
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